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Global Energy Budget Lesson

Global Precipitation Measurement Mission Developed by the GPM Education and Public Outreach Team NASA Goddard Space Flight Center. Global Energy Budget Lesson. Guiding Questions. Energy: What do radiation, reflection and absorption mean?

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Global Energy Budget Lesson

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  1. Global Precipitation Measurement Mission Developed by the GPM Education and Public Outreach Team NASA Goddard Space Flight Center Global Energy Budget Lesson

  2. Guiding Questions Energy: What do radiation, reflection and absorption mean? Energy on Earth: What factors can affect how energy is absorbed, reflected and radiated from Earth? Heating Earth’s Surface Inquiry Lab: How does Earth “spend” it’s allowance of energy from the Sun? Earth’s energy budget: How is Earth’s energy budget like a monetary budget? Using Satellites: How does NASA use satellite data to study Earth’s energy budget?

  3. Engage • Important vocabulary words for today are radiation, reflectionandabsorption. Brainstorm a list of any words or phrases you think of related to those three.

  4. Think-Pair-Share • THINK: Look at the picture of the Earth. Think about any factors that might affect how energy is absorbed, radiated or reflected from Earth. Describe them and how they would make a difference (heating or cooling). • PAIR: Share at least one idea with your partner. • SHARE: Raise your hand if you'd like to share something you and your partner discussed.

  5. Reflection and Absorption Animation Source: NASA/Goddard Space Flight Center Conceptual Image Lab For more information or other formats of this animation, go to: http://svs.gsfc.nasa.gov/goto?20094

  6. Other vocabulary albedo – how much of the light energy hitting a surface is reflected convection – a fluid (like air or water) circulating conduction – heat transferred when materials touch infrared – a part of the electromagnetic spectrum we feel as heat

  7. Heating Earth’s Surfaces Labs Big Question: How does the Earth "spend" its energy allowance from the Sun? You will be divided into six groups, each with five people. Roles: • Task Manager - reads the procedures, makes sure the group is following directions and being SAFE • Timekeeper - starts and stops stopwatch • Data Reader 1 - calls out one set of data • Data Reader 2 - calls out the other set of data • Recorder - writes down what the data readers call out (although everyone needs to write the data eventually)

  8. Heating Earth’s Surfaces Labs Expectations: • Make a hypothesis before beginning. • Stay with your group and do your assigned task. • Use the equipment appropriately and safely - be especially careful of the heat lamp and shade, as they can get HOT. • Be prepared to describe your experiment and results to the class at the end.

  9. Heating Earth’s Surfaces Labs Other reminders: • If your thermometer has both Fahrenheit and Celsius, make sure you are recording Celsius. • Don't stop the stopwatch between data readings - just have the readers call out the numbers, but keep the time going. • Make sure you move the lamp away when you turn it off for "nighttime" - but be careful it may be HOT.

  10. Heating Earth’s Surfaces Labs Big Question: How does the Earth "spend" its energy allowance from the Sun? Summary of Albedo Lab: Summary of Land vs. Water Lab: Summary of Clouds Lab:

  11. What is a budget? energy budget • the ways (and how much) energy is used and transferred on Earth by being absorbed, reflected or radiated

  12. NASA Video • NASA Real World: Monitoring Earth's Energy Budget with CERES http://www.youtube.com/watch?v=D_Qmue54W14

  13. Video Notes • Key points from the video:

  14. The Greenhouse Effect • A layer of greenhouse gases – primarily water vapor, and including much smaller amounts of carbon dioxide, methane and nitrous oxide – act as a thermal blanket for the Earth, absorbing heat and warming the surface to a life-supporting average of 59 degrees Fahrenheit (15 degrees Celsius). Source: http://climate.nasa.gov/causes

  15. Acting out the Global Energy Budget Reflected by atmosphere6% Reflected by clouds 20% Reflected by Earth's surface4% Absorbed by land and oceans51% Absorbed by clouds 3% Absorbed by atmosphere16%

  16. Global Energy Budget Study the Earth's Energy Budget. What is absorbing and reflecting the Sun's energy? Where is most of the energy being absorbed? What carries a large percentage of heat back into the atmosphere? Animated Energy Budget http://earthguide.ucsd.edu/earthguide/diagrams/energybalance/

  17. Incoming Radiation – January versus June

  18. Earth’s Land Cover

  19. Reflected Radiation - January

  20. Reflected Radiation - June

  21. Summarizer Describe what the Global Energy Budget is and how it works. • What would happen if the surface of Earth changed to be more or less reflective? If there were more or less clouds all the time? How are the oceans and other water important to the Global Energy Budget?

  22. Extension Activities

  23. Aqua CERES: Tracking Earth’s Heat Balance Source: NASA

  24. Average Clear-Sky Outgoing Radiation Source: NASA/Goddard Space Flight Center Conceptual Image Lab

  25. Average Clear-Sky Albedo Animation Source: NASA/Goddard Space Flight Center Conceptual Image Lab

  26. Seasonal Changes in Earth’s Surface Albedo

  27. Differentiation and Re-teaching

  28. Word Splash reflection

  29. Word Splash radiation

  30. Word Splash absorption

  31. Global Energy Budget Some absorbed heat is radiated back into atm. *a large % as latent heat in water vapor 20% of sunlight reflected by clouds and 3% is absorbed 4% reflected by surface and back into atmosphere 16% is absorbed by gases and dust in the air and 6% reflected 51% of energy absorbed by land and water

  32. Global Energy Budget 16% is absorbed by gases and dust in the air and 6% reflected Some absorbed heat is radiated back into atm. *a large % as latent heat in water vapor 51% of energy absorbed by land and water 20% of sunlight reflected by clouds and 3% is absorbed 4% reflected by surface and back into atmosphere

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